Khim.—Farm. Zh. 12 (7), (1978) p. 71-77 Oleinik et al “Synthesis and antileishmaniasis activity of arylfurylquinoxalines”. |
Chemical Abstract 88 (23) (1978) p. 513 Szucs et al “Derivatives of alpha-and beta-unsaturated ketones derived from acetylpyridine. VIII Spectral properties of some pyriding analogs of 1,3,5-triphenyl-2-pyrazoline” & Acta Fac. Pharm. Univ. comenianae, 30 (1977) p. 127-146, 88:169217. |
Chemical Abstract, 74 (21), (1971) p. 125 lyer, et al “p-aminosalicylic acid derivatives as possible tuberculostats” & Indian J. Chem., 8 (11), (1970), p. 964-968, 74:108600. |
Heterocycles, 35(2) 1993 p. 975-995, Wasserman et al “Synthesis and characterization of pyrrolinonecaroxylates formed by reaction of vivinal tricarbonyl derivatives with aldehyde schiff bases”. |
J. Med. Chem., 11(2), (1968), p. 295-300, Atwell et al “Potential antitumor agents”. |
J. Org. Chem., 60 (25), (1925), p. 8231-5, Wasserman et al “Selective Oxidation of phosphorus ylides by dimethyldioxirane application to the formation of vicinal tricarbonyls”. |
Crettaz et al Biochem. J. (1990) 272, 391-397 Ligand specifications of recombinant retinoic acid receptors RARα and RARβ. |
Sani et al Archives of Biochemistry and Biophysics vol. 283, No. 1, Nov. 15, pp. 107-113, 1990 “Isolation, Partial Purification and Characterization of Nuclear Retinoic Acid Receptors from Chick Skin”. |
Niculescu-Duvaz et al Carcinogenesis vol. 6 No. 4 pp. 479-486, 1985 QSAR application in chemical caracinogenesis II. QSAR analysis of a class of carcinogenesis inhibitor, retinoids. |
Shudo et al, “Structural Evolution of Retinoids”, Advances in Drug Research, Academic Press, Vol. 24, 1993, pp. 81-119; XP000576447. |
Dawson et al, “Conformational Effects on Retinoid Receptor Selectivity. 2. Effects of Retinoid Bridging Group on Retinoid X Receptor Activity and Selectivity”, Journal of Medicinal Chemistry, American Chemical Society, vol. 38, No. 17, 1995, pp. 3368-3383; XP002148373. |